In previous publications it was shown that the precipitation of silicon boride around grain boundaries may lead to an increase of the power factor in nanocrystalline silicon. Such an effect was further explained by computational analyses showing that the formation of an interphase at the grain boundaries along with high boron densities can actually lead to a concurrent increase of the electrical conductivity \u3c3 and of the Seebeck coefficient S. In this communication we report recent evidence of the key elements ruling such an unexpected effect. Nanocrystalline silicon films deposited onto a variety of substrates were doped to nominal boron densities in excess of 1020cm-3 and were annealed up to 1000\ub0C to promote boride precipitation. ...
Recent investigations of fundamental electronic properties (especially the carrier transport mechani...
It is well known that the value of room-temperature conductivity sigma(RT) of boron-doped silicon fi...
Thermoelectric materials have gained a considerable amount of attention as a practical power source ...
In previous publications it was shown that the precipitation of silicon boride around grain boundari...
A large thermoelectric power factor in heavily boron-doped p-type nanograined Si with grain sizes ~3...
Hole-containing silicon has been regarded as a viable candidate thermoelectric material because of i...
In this work, we describe a novel idea that allows for high thermoelectric power factors in two-phas...
In this work, silicon-rich SiO2 (SRSO) thin films were deposited at different substrate temperatures...
The structure and thermoelectric properties of boron doped nanocrystalline Si0.8 Ge0.2 thin films ar...
Heavily boron-doped polycrystalline silicon has been reported to be characterized by somewhat unexpe...
Nanostructuring has opened new ways to increase the thermoelectric performance of a host of material...
Layers of Si nanocrystals in a dielectric matrix have promising properties as an absorber layer in a...
International audienceIn this study we investigate the mechanisms of growth and boron (B) incorporat...
Silicon, a candidate as an abundant-element thermoelectric material for low-temperature thermal ener...
The effects of heat-treatments around 1000°Cand subsequent annealing on the electrical properties of...
Recent investigations of fundamental electronic properties (especially the carrier transport mechani...
It is well known that the value of room-temperature conductivity sigma(RT) of boron-doped silicon fi...
Thermoelectric materials have gained a considerable amount of attention as a practical power source ...
In previous publications it was shown that the precipitation of silicon boride around grain boundari...
A large thermoelectric power factor in heavily boron-doped p-type nanograined Si with grain sizes ~3...
Hole-containing silicon has been regarded as a viable candidate thermoelectric material because of i...
In this work, we describe a novel idea that allows for high thermoelectric power factors in two-phas...
In this work, silicon-rich SiO2 (SRSO) thin films were deposited at different substrate temperatures...
The structure and thermoelectric properties of boron doped nanocrystalline Si0.8 Ge0.2 thin films ar...
Heavily boron-doped polycrystalline silicon has been reported to be characterized by somewhat unexpe...
Nanostructuring has opened new ways to increase the thermoelectric performance of a host of material...
Layers of Si nanocrystals in a dielectric matrix have promising properties as an absorber layer in a...
International audienceIn this study we investigate the mechanisms of growth and boron (B) incorporat...
Silicon, a candidate as an abundant-element thermoelectric material for low-temperature thermal ener...
The effects of heat-treatments around 1000°Cand subsequent annealing on the electrical properties of...
Recent investigations of fundamental electronic properties (especially the carrier transport mechani...
It is well known that the value of room-temperature conductivity sigma(RT) of boron-doped silicon fi...
Thermoelectric materials have gained a considerable amount of attention as a practical power source ...